Monitoring the State of Charge (SoC) in battery cells is necessary to avoid damage and to extend battery life. Support Vector Machine (SVM) algorithms and Machine Learning techniques in general can provide real-time SoC estimation without the need to design a cell model. In this work, an SVM was trained by applying an Ant Colony Optimization method. The obtained trained model was 10-fold cross-validated and then designed in Hardware Description Language to be run on FPGA devices, enabling the design of low-cost and compact hardware. Thanks to the choice of a linear SVM kernel, the implemented architecture resulted in low resource usage (about 1.4% of Xilinx Artix7 XC7A100TFPGAG324C FPGA), allowing multiple instances of the SVM SoC estimator...
State of health is one of the most critical parameters to characterize inner status of lithium-ion b...
International audienceAn accurate algorithm for lithium polymer battery state-of-charge (SOC) estima...
Accurate estimation of State of Charge (SOC) is crucial. With the ever-increasing usage of batteries...
Monitoring the State of Charge (SoC) in battery cells is necessary to avoid damage and to extend bat...
Batteries State-of-Charge (SoC) must be accurately monitored for safe battery operations, and to ext...
This paper describes the hardware implementation of a model-based State-of-Charge (SoC) estimation a...
For real-time monitoring and safe control of electrical vehicles, it is important to accurately esti...
Powertrain electrification is bound to pave the way for the decarbonization process and pollutant em...
With the ever-increasing usage of lithium-ion batteries, especially in transportation applications, ...
International audienceAn efficient estimation of the State of Charge (SoC) of an electrical battery ...
Incisively estimating the state of charge (SOC) of lithium-ion batteries is essential to ensure the ...
Batteries are primary source of clean energy for various applications such as transportation, grid s...
One of the most important and indispensable parameters of a Battery Management Systems (BMS) is accu...
Accurate estimation of SOC of lithium-ion batteries has always been an important work in the battery...
In this study, a machine learning method is proposed for online diagnosis of battery state of health...
State of health is one of the most critical parameters to characterize inner status of lithium-ion b...
International audienceAn accurate algorithm for lithium polymer battery state-of-charge (SOC) estima...
Accurate estimation of State of Charge (SOC) is crucial. With the ever-increasing usage of batteries...
Monitoring the State of Charge (SoC) in battery cells is necessary to avoid damage and to extend bat...
Batteries State-of-Charge (SoC) must be accurately monitored for safe battery operations, and to ext...
This paper describes the hardware implementation of a model-based State-of-Charge (SoC) estimation a...
For real-time monitoring and safe control of electrical vehicles, it is important to accurately esti...
Powertrain electrification is bound to pave the way for the decarbonization process and pollutant em...
With the ever-increasing usage of lithium-ion batteries, especially in transportation applications, ...
International audienceAn efficient estimation of the State of Charge (SoC) of an electrical battery ...
Incisively estimating the state of charge (SOC) of lithium-ion batteries is essential to ensure the ...
Batteries are primary source of clean energy for various applications such as transportation, grid s...
One of the most important and indispensable parameters of a Battery Management Systems (BMS) is accu...
Accurate estimation of SOC of lithium-ion batteries has always been an important work in the battery...
In this study, a machine learning method is proposed for online diagnosis of battery state of health...
State of health is one of the most critical parameters to characterize inner status of lithium-ion b...
International audienceAn accurate algorithm for lithium polymer battery state-of-charge (SOC) estima...
Accurate estimation of State of Charge (SOC) is crucial. With the ever-increasing usage of batteries...